CN212913552U - Graphite alkene hot compress eye-shade that generates heat - Google Patents

Graphite alkene hot compress eye-shade that generates heat Download PDF

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Publication number
CN212913552U
CN212913552U CN202020985791.9U CN202020985791U CN212913552U CN 212913552 U CN212913552 U CN 212913552U CN 202020985791 U CN202020985791 U CN 202020985791U CN 212913552 U CN212913552 U CN 212913552U
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inner cover
hot compress
heating element
cover
graphene
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CN202020985791.9U
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杨石山
潘智军
谭化兵
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Anhui Aerospace and PMA Health Technology Co Ltd
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Anhui Aerospace and PMA Health Technology Co Ltd
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Abstract

A graphene heating hot compress eye patch comprises an outer cover, an inner cover and a fixing band, wherein the outer cover can accommodate the inner cover, and rectangular holes are formed in two ends of the outer cover respectively to allow the fixing band to pass through; the inner cover has an appearance capable of covering the outline of the two eyes and is connected in the hollow part of the outer cover; the graphene heating element is attached to the middle of the inner side surface of the inner cover; the inner side surface of the 3D memory cotton assembly is detachably bonded with the inner cover, wherein the 3D memory cotton assembly is matched with the outer shape of the inner cover, the edge of the outer side surface of the 3D memory cotton assembly forms a continuous protruding edge, and a plurality of heat-transmitting holes are formed in the middle recessed part; the cotton subassembly of 3D memory can guarantee closely to laminate with the eye profile to infrared effect for graphite alkene heating element provides the space, has avoided graphite alkene heating element direct and eye contact oppression eyeball, and the middle laminating has the porous cotton in the hole of diathermanous in graphite alkene heating element outside, can play better hot compress effect.

Description

Graphite alkene hot compress eye-shade that generates heat
Technical Field
The utility model relates to an eye-shade technical field, specific theory relates to a graphite alkene hot compress eye-shade that generates heat.
Background
The eyeshade is a common daily nursing device with a head-mounted device, and mainly has the functions of shading eyes and helping a user to sleep stably. However, with social progress and continuous improvement of living standard of people, the fatigue of eyes is rapidly increased by using electronic products such as mobile phones, tablets, computers and the like for a long time, and the common functions of the eyepatch cannot meet the requirements of the public. Therefore, the eyeshade for physiotherapy of eyes by utilizing the heat of the eyeshade is produced.
In the existing market, a power supply element is used for supplying power to a graphene heating element in an eye patch, and infrared rays generated by graphene are used for heating an eye region, so that the existing mainstream graphene eye patch is adopted. However, the existing graphene eye patch has a planar design mode, so that the light shielding effect is poor or even the light is not shielded. The eye-shade heat-generating body laminates the eyeball, and the temperature oppresses the eyeball and lets the user experience feel very poor when wearing the use for a long time, and the phenomenon of dizzy and edema appears even.
In addition, most of power supply elements of the graphene heating eye shield are mobile power supplies, so that a user has to carry the mobile power supplies when using the power supply, and the power supply is very inconvenient. Aiming at the problems, innovative design is urgently needed on the basis of the original graphene eye mask.
SUMMERY OF THE UTILITY MODEL
In view of the above technical problem, the utility model discloses the embodiment provides a graphite alkene hot compress eye-shade that generates heat solves the dizzy problem of edema of eye that oppresses eyeball and lead to.
A graphene heating hot compress eye patch, comprising:
the outer cover is of a frame type structure, is provided with a hollow part capable of covering the outline of the two eyes and can accommodate the inner cover therein, and two ends of the outer cover are respectively provided with a rectangular hole to allow the head band fixing band to pass through;
the inner cover is provided with an appearance capable of covering the outline of the two eyes and is connected in the hollow part of the outer cover in an embedded mode;
the graphene heating element is attached to the middle of the inner side surface of the inner cover and can heat in a power-on state;
the 3D memory cotton assembly is matched with the shape of the inner cover, the inner side surface of the 3D memory cotton assembly is detachably bonded with the inner cover, the edge of the outer side surface of the 3D memory cotton assembly forms a continuous protruding edge, and a plurality of heat-transmitting holes are formed in the middle of the 3D memory cotton assembly;
the portable power supply unit is used for supplying power to the graphene heating element;
the control switch is arranged on a circuit of the graphene heating element and used for controlling the power supply of the portable power supply unit to the graphene heating element;
the two ends of the head band fixing band are correspondingly connected in the rectangular holes at the two ends of the outer cover, so that the head band fixing band can be wound on the head to attach the outer cover and the inner eye patch structure thereof on the eyes.
The outer cover is made of silica gel, the outer cover and the inner cover are detachably connected, a buckle type structure is usually adopted, or an expansion extrusion connection mode (namely the size of the inner cover is slightly larger than that of the hollow part of the outer cover) can be adopted, or other auxiliary structures such as screws, fixing pieces and the like are adopted.
The control switch comprises a magnetic attraction switch and a gear switch, wherein the magnetic attraction switch is used for controlling the on-off of the circuit, and the gear switch is used for controlling the amplitude of the power supply current.
The portable power supply unit adopts the detachable mode to connect on the bandeau fixed band, and magnetism is inhaled the switch and is kept off the inboard that the position switch all set up the slot at the dustcoat, and the position can be bilateral symmetry, inhales the switch at portable power supply unit, magnetism, keeps off and sets up necessary wire and resistance between switch and the graphite alkene heating element in order to realize circuit switching, current amplitude and adjust.
The inner cover is made of silica gel, and the outer side surface of the inner cover is made of cation fabric.
The graphene heating element is attached to the inner side surface of the inner cover in a gluing mode.
The surface of the connecting end of the headband fixing band adopts a magic tape.
The 3D memory cotton component is connected with the inner side surface of the inner cover in a magic tape mode.
The 3D memory cotton component is integrally formed, wherein the middle sunken part is formed by compression molding.
Has the advantages that:
the cotton subassembly of 3D memory through the edge can guarantee closely to laminate with the eye profile to infrared effect for graphite alkene heating element provides the space, has avoided graphite alkene heating element direct and eye contact oppression eyeball, and the porous cotton that has the hole of diathermanous in graphite alkene heating element outside is laminated in the middle of, through the distribution and the aperture setting in hole of diathermanous, can carry out corresponding heat dissipation to specific position, plays better hot compress effect.
Drawings
The invention may be better understood from the following description of particular embodiments thereof taken in conjunction with the accompanying drawings, in which:
FIG. 1 is a schematic view of the construction of the housing;
FIG. 2 is a schematic structural view of the inner cover;
FIG. 3 is a schematic structural diagram of a 3D memory foam assembly;
fig. 4 is a front view of a graphene heating hot compress eye patch;
fig. 5 is a rear view of a graphene heating hot compress eye patch;
fig. 6 is a side view of a graphene heating hot compress eye patch.
The above-mentioned figures are all schematic given examples, and are not limited thereto.
Other features, objects and advantages of the invention will become more apparent from the following detailed description of non-limiting embodiments thereof, when read in conjunction with the accompanying drawings, in which like or similar reference characters identify the same or similar features.
Detailed Description
Features and exemplary embodiments of various aspects of the present invention will be described in detail below. In the following detailed description, numerous specific details are set forth in order to provide a thorough understanding of the present invention. It will be apparent, however, to one skilled in the art that the present invention may be practiced without some of these specific details. The following description of the embodiments is merely intended to provide a better understanding of the invention by illustrating examples of the invention. The present invention is in no way limited to any specific configuration and algorithm set forth below, but covers any modification, replacement or improvement of elements, components and algorithms without departing from the spirit of the present invention. In the following description, well-known structures and techniques are not shown in order to avoid unnecessarily obscuring the present invention.
Example embodiments will now be described with reference to the accompanying drawings, which may be embodied in various forms and should not be construed as limited to the embodiments set forth herein; rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the concept of example embodiments to those skilled in the art.
Furthermore, the described features, structures, or characteristics may be combined in any suitable manner in one or more embodiments. In the following description, numerous specific details are provided to provide a thorough understanding of embodiments of the invention. One skilled in the relevant art will recognize, however, that the invention may be practiced without one or more of the specific details, or with other methods, components, materials, and so forth. In other instances, well-known structures, materials, or operations are not shown or described in detail to avoid obscuring aspects of the invention.
The embodiment of the utility model provides a graphite alkene hot compress eye-shade that generates heat specifically:
as shown in fig. 1, the outer cover 1 is a frame structure, has a hollow portion capable of covering the outline of both eyes, and is capable of accommodating the inner cover 5 therein, and both ends of the outer cover 1 are respectively provided with a rectangular hole 4 for allowing the headband fixing band 8 to pass through; the outer cover is made of silica gel, the outer cover 1 and the inner cover 5 are detachably connected, a buckle type structure is usually adopted, or an expansion extrusion connection mode (namely the size of the inner cover is slightly larger than that of the hollow part of the outer cover) can be adopted, or other auxiliary structures such as screws, fixing pieces and the like are adopted.
As shown in fig. 2, the inner cover 5 has an outer shape capable of covering the outline of both eyes, and is connected in the hollow part of the outer cover 1 in an embedded manner; the inner cover 5 is made of silica gel, and the outer side surface of the inner cover is made of cation fabric.
A graphene heating element 11 (refer to fig. 6) is attached to the middle of the inner side surface of the inner cover 5, and can generate heat in an electrified state; the graphene heating element 11 is attached to the inner side surface of the inner cover by means of gluing, and if the graphene heating element can be not separated from the inner cover by structural design (such as caulking groove installation), the graphene heating element can also be connected without using a glue.
As shown in fig. 3, the 3D memory cotton assembly 10 is adapted to the shape of the inner cover 5, the inner side surface of the 3D memory cotton assembly is detachably bonded to the inner cover 5, wherein a continuous protruding ridge is formed at the edge of the outer side surface of the 3D memory cotton assembly, a plurality of heat-transmitting holes are formed in the middle recessed portion, the heat-transmitting holes can radiate heat of the graphene heating element 10 to the eyes, in a use state, the protruding ridge can be in contact with and tightly attached to the skin around the eyes, no gap is left, and due to the existence of the protruding ridge, the recessed portion in the protruding ridge cannot be in direct contact with the eyes; the number distribution and the aperture of the heat-permeable holes can be adaptively arranged according to the requirement of hot compress, generally, the number distribution of the heat-permeable holes at the central part of the eyeball is more, the aperture is relatively larger, the distribution of the heat-permeable holes at the edge position is less, and the aperture is smaller. The cotton subassembly 10 of 3D memory is connected with the inboard surface of inner cover 5 through the mode that the magic was pasted, specifically, can set up the magic at the edge of the cotton subassembly 10 of 3D memory and paste and make its position with corresponding of inner cover 5 be connected, also can set up the magic at the both ends of the cotton subassembly 10 of 3D memory and the position of middle bridge of the nose and paste and be connected with inner cover 5. The cotton subassembly of 3D memory adopts integrated into one piece, and wherein the sunken part in the middle of is compression moulding, adopts hot briquetting's mode usually, makes the cotton subassembly of 3D memory 10 after the shaping have good wholeness, still can keep itself difficult damaged after dismantling many times between and the inner cover, improves its life. The 3D memory cotton assembly 10 is connected with the inner cover 5 in a magic tape mode, so that the 3D memory cotton assembly 10 can be conveniently detached to be cleaned or washed, and when the 3D memory cotton assembly 10 is damaged due to repeated use, a new 3D memory cotton assembly 10 can be replaced; the 3D memory foam component 10 with different specifications and materials can be designed according to the needs of users, so as to meet different user requirements.
The detachable 3D memory cotton assembly 10 is completely attached to the eyes, the forehead and the nose bridge of the human face by adopting the human engineering design, so that the light leakage phenomenon in the use process is avoided; the design of the eyeshade is thinner at the eyeball part of the human body, so that the oppressive feeling of the eyeshade to the eyeshade in the use process is reduced.
With reference to fig. 4-6, the portable power supply unit 6 is used to supply power to the graphene heating element 10, and the portable power supply unit 6 is usually fixed to the headband fixing band 8 by means of a hook and loop fastener;
the control switch is arranged on a circuit of the graphene heating element and used for controlling the power supply of the portable power supply unit to the graphene heating element; the control switch comprises a magnetic attraction switch 3 and a gear switch 2, wherein the magnetic attraction switch 3 is used for controlling the on-off of the circuit, and the gear switch 2 is used for controlling the amplitude of the power supply current.
Two ends 9 of the head band fixing band 8 are correspondingly connected in the rectangular holes 4 at two ends of the outer cover 1, so that the head band fixing band can be wound on the head to attach the outer cover 1 and the inner eye cover structure thereof on eyes. The surface of the connecting end of the headband fixing band 8 adopts a magic tape.
The portable power supply unit 6 is detachably connected to the headband fixing band 8, and the portable power supply unit 6 is a small lithium battery and is adhered to one end of the headband fixing band 8 in a magic tape manner; the battery is provided with a microUSB interface for connecting a waterproof wire; the other end of the waterproof wire is magnetically attracted to the switch buckle in a design mode, is connected with the magnetic attraction switch arranged on the outer side of the outer cover and supplies power to the graphene heating element 11.
Switch 3 and fender position switch 2 are all set up in the inboard of the rectangular hole of dustcoat to magnetism, and the position can be bilateral symmetry, and it sets up necessary wire 7 and resistance in order to realize circuit switching, current amplitude regulation to inhale switch 3, fender position switch 2 and graphite alkene heating element 11 at portable power supply unit 6, magnetism. After the magnetic suction switch 3 is switched on, the product is automatically started and defaulted to enter a high-temperature gear; pressing for a short time to enter a medium temperature gear, and pressing for a short time to enter a low temperature gear; continuously pressing a switch for a short time, and circularly entering high, medium and low gears by the product; the product is shut down for a long press of 5 seconds. When the product is implemented, a conventional small-sized control circuit can be used as long as simple switch and gear control can be met, and the technology belongs to the conventional technology, so that the detailed description is omitted.
The graphite alkene hot compress eye-shade that generates heat that this embodiment provided, the cotton subassembly of 3D memory through the edge can be guaranteed and closely laminate with the eye profile, and infrared effect for graphite alkene heating element provides the space, avoided graphite alkene heating element direct and eye contact oppression eyeball, the middle laminating is in the outside porous cotton that has the hole of diathermanous of graphite alkene heating element, distribution and the aperture setting through the hole of diathermanous, can have corresponding heat dissipation to specific position, play better hot compress effect.
The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the present invention. Various modifications to this embodiment will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the spirit or scope of the invention. Thus, the present invention is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
It will be appreciated by persons skilled in the art that the above embodiments are illustrative and not restrictive. Different features which are present in different embodiments may be combined to advantage. Other variations to the disclosed embodiments can be understood and effected by those skilled in the art upon studying the specification and the claims. In the claims, the term "comprising" does not exclude other means or steps; the indefinite article "a" does not exclude a plurality; the terms "first" and "second" are used to denote a name and not to denote any particular order.

Claims (10)

1. The utility model provides a graphite alkene hot compress eye-shade that generates heat which characterized in that includes:
the outer cover is of a frame type structure, is provided with a hollow part capable of covering the outline of the two eyes and can accommodate the inner cover therein, and two ends of the outer cover are respectively provided with a rectangular hole to allow the head band fixing band to pass through;
the inner cover is provided with an appearance capable of covering the outline of the two eyes and is connected in the hollow part of the outer cover in an embedded mode;
the graphene heating element is attached to the middle of the inner side surface of the inner cover and can heat in a power-on state;
the 3D memory cotton assembly is matched with the shape of the inner cover, the inner side surface of the 3D memory cotton assembly is detachably bonded with the inner cover, continuous protruding edges are formed at the edge of the outer side surface of the 3D memory cotton assembly, and a plurality of heat-transmitting holes are formed in the middle of the 3D memory cotton assembly;
and the number of the first and second groups,
the portable power supply unit is used for supplying power to the graphene heating element;
the control switch is arranged on a circuit of the graphene heating element and used for controlling the power supply of the portable power supply unit to the graphene heating element;
the two ends of the headband fixing band are correspondingly connected in the rectangular holes at the two ends of the outer cover, so that the headband fixing band can be wound on the head to attach the outer cover and the inner eye patch structure thereof to eyes.
2. The graphene exothermic hot compress eye shield of claim 1,
the outer cover is made of silica gel, and the outer cover and the inner cover are detachably connected.
3. The graphene exothermic hot compress eye shield of claim 1,
the control switch comprises a magnetic attraction switch and a gear switch, wherein the magnetic attraction switch is used for controlling the on-off of the circuit, and the gear switch is used for controlling the amplitude of the power supply current.
4. The graphene heating hot compress eye shield of claim 3,
portable power supply unit adopts the detachable mode to connect on the bandeau fixed band, and the switch is all set up the inboard at the slot of dustcoat with keeping off position switch to magnetism.
5. The graphene exothermic hot compress eye shield of claim 4,
the magnetic switch and the gear switch are bilaterally symmetrical.
6. The graphene exothermic hot compress eye shield of claim 1,
the inner cover is made of silica gel, and the outer side surface of the inner cover is made of cation fabric.
7. The graphene exothermic hot compress eye shield of claim 1,
the graphene heating element is attached to the inner side surface of the inner cover in a gluing mode.
8. The graphene exothermic hot compress eye shield of claim 1,
the surface of the connecting end of the headband fixing band adopts a magic tape.
9. The graphene exothermic hot compress eye shield of claim 1,
the 3D memory cotton component is connected with the inner side surface of the inner cover in a magic tape mode.
10. The graphene exothermic hot compress eye shield of claim 1,
the 3D memory cotton component is integrally formed, wherein the middle sunken part is formed by compression molding.
CN202020985791.9U 2020-06-03 2020-06-03 Graphite alkene hot compress eye-shade that generates heat Active CN212913552U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020985791.9U CN212913552U (en) 2020-06-03 2020-06-03 Graphite alkene hot compress eye-shade that generates heat

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020985791.9U CN212913552U (en) 2020-06-03 2020-06-03 Graphite alkene hot compress eye-shade that generates heat

Publications (1)

Publication Number Publication Date
CN212913552U true CN212913552U (en) 2021-04-09

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Application Number Title Priority Date Filing Date
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Country Status (1)

Country Link
CN (1) CN212913552U (en)

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